Histone H3G34R mutation causes replication stress, homologous recombination defects and genomic instability in <i>S. pombe</i>.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28718400.
- Also identified by DOI 10.7554/eLife.27406 and PMC identifier 5515577.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Recurrent somatic mutations of <i>H3F3A</i> in aggressive pediatric high-grade gliomas generate K27M or G34R/V mutant histone H3.3. H3.3-G34R/V mutants are common in tumors with mutations in p53 and ATRX, an H3.3-specific chromatin remodeler. To gain insight into the role of H3-G34R, we generated fission yeast that express only the mutant histone H3. H3-G34R specifically reduces H3K36 tri-methylation and H3K36 acetylation, and mutants show partial transcriptional overlap with <i>set2</i> deletions. H3-G34R mutants exhibit genomic instability and increased replication stress, including slowed replication fork restart, although DNA replication checkpoints are functional. H3-G34R mutants are defective for DNA damage repair by homologous recombination (HR), and have altered HR protein dynamics in both damaged and untreated cells. These data suggest H3-G34R slows resolution of HR-mediated repair and that unresolved replication intermediates impair chromosome segregation. This analysis of H3-G34R mutant fission yeast provides mechanistic insight into how G34R mutation may promote genomic instability in glioma.
Medical subject headings
- DNA Replication
- Genomic Instability
- Histones
- Homologous Recombination
- Mutant Proteins
- Schizosaccharomyces